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Upper bound rigid block methods and finite element limit analysis are applied to investigate the undrained stability of rectangular tunnels.
These methods are ideal for parallel processing and provide a very general setting to study parallel block methods including overlapping.
When line and block methods are used, it is advantageous not to incorporate the turbulence equations into the multigrid cycle.
For first- and second-order discretized Navier Stokes equations, the analysis of point, line, and block methods is in good agreement with the numerical results.
Coupling this with the fact that block methods can be applied to systems arising from stable mixed discretizations implies that these techniques are a promising direction for developing scalable methods for Navier Stokes.
The deterministic approach includes the pseudo-static methods and is often referred to the Newmark-type or sliding block methods.
Similar(52)
Numerical experiments confirm that the block method significantly outperforms the standard method in these settings.
A modified rotating block method is proposed to obtain the rotational displacement under seismic conditions.
The compliant linear-motion mechanism is firstly modeled by making use of the building block method.
A stochastic key block method is developed for the analysis of complex blocky rock masses containing non-persistent joint sets.
Ionic liquid microsphere efficiency was measured through chemical screening tests, dynamic tube block method and also through electrochemical techniques.
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